Identification of Novel Compounds Inhibiting the Kinase Activity of the CDK5/p25 Complex via Direct Binding to p25
Riheb Jabeur1,2, Caroline Corbel1, Pascal Loyer3
1IRDL UMR CNRS 6027, Université Bretagne Sud, 56017 Vannes, France.
Abstract:
Tamoxifen, the gold standard drug for endocrine therapy for breast cancer, modulates the phosphorylation status of the TAU protein in Alzheimer's disease by inhibiting CDK5 kinase activity. Its binding to p25 prevents CDK5/p25 complexation and hence a decrease of CDK5 activity. In breast tumors, this complex is involved in the proliferation and survival of cancer cells, as well as in the disease's prognosis. Still, the molecular stability of the CDK5/p25 complex following tamoxifen exposure in this cancer type has not yet been clearly deciphered. Here, we report the functional characterization of CDK5 and its p25 regulatory subunit in the absence and presence of tamoxifen. In addition, two novel inhibitors of the kinase activity of the CDK5/p25 complex are identified, both of which would reduce the risk of recurrence of estrogen receptor-positive (ER+) breast cancers and prevent drawbacks induced by tamoxifen exposure. Accordingly, 6His-CDK5 and 6His-p25 have been expressed and purified. Fluorescence anisotropy measurements have been used to assess that the two proteins do form an active complex, and thermodynamic parameters of their interaction were measured. It was also confirmed that tamoxifen directly binds to p25 and inhibits CDK5 kinase activity. Similar observations were obtained using 4-hydroxytamoxifen, an active metabolized form of tamoxifen. Two novel compounds have been identified here that harbor a benzofuran moiety and were shown to target directly p25, and their bindings resulted in decreased CDK5 kinase activity. This encouraging alternative opens the way to the ensuing chemical optimization of this scaffold. It also promises a more specific therapeutic approach that may both tackle the pathological signaling in breast cancer and provide a potential new drug for Alzheimer's disease.
Insights
Tamoxifen inhibits CDK5/p25 activity, crucial in breast cancer and Alzheimer's disease. Novel benzofuran compounds targeting p25 offer a new therapeutic strategy for both conditions.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Tamoxifen is a standard breast cancer therapy that also affects Alzheimer's disease pathology by inhibiting CDK5 kinase.
- The CDK5/p25 complex is implicated in breast cancer cell proliferation and survival.
- The stability of the CDK5/p25 complex after tamoxifen treatment in breast cancer is not fully understood.
Purpose of the Study:
- To characterize the CDK5/p25 complex in the presence and absence of tamoxifen.
- To identify novel inhibitors of CDK5/p25 kinase activity.
- To explore new therapeutic strategies for ER+ breast cancer and Alzheimer's disease.
Main Methods:
- Expression and purification of 6His-CDK5 and 6His-p25.
- Fluorescence anisotropy to confirm complex formation and measure thermodynamic parameters.
- Assay of tamoxifen and novel compounds' inhibitory effects on CDK5/p25 activity.
Main Results:
- Tamoxifen and 4-hydroxytamoxifen directly bind to p25, inhibiting CDK5 kinase activity.
- Two novel benzofuran-containing compounds were identified that target p25 and decrease CDK5 kinase activity.
- The interaction between CDK5 and p25 was confirmed, with measured thermodynamic parameters.
Conclusions:
- Tamoxifen's mechanism involving CDK5/p25 inhibition is confirmed, offering insights into its dual role in breast cancer and Alzheimer's disease.
- Novel benzofuran compounds show potential as targeted inhibitors of CDK5/p25, suggesting a new therapeutic avenue.
- These findings pave the way for developing more specific treatments for breast cancer and Alzheimer's disease.


